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首页> 外文期刊>International Journal of Infrared and Millimeter Waves >Beam characteristics of mechanically tunable magnetron injection guns
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Beam characteristics of mechanically tunable magnetron injection guns

机译:机械可调磁控枪的射束特性

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Gyrotron has received extensive attention owing to its high-power capability, particularly when the wavelength shrinks below the millimeter-wave range. The electron beam of a gyrotron is typically generated by a magnetron injection gun (MIG), and a mechanically tunable MIG is employed to enhance the beam quality. However, a slight adjustment in the position of the center electrode of the mechanically tunable MIG can cause significant modification of the electric-field profile. Consequently, the cathode current of the mechanically tunable MIG is not only dependent on the cathode temperature, but also the relative position of center electrode. To accurately determine the beam characteristics of the mechanically tunable MIG, an improved computer program is employed to simulate electron trajectories. Simulation and measurement results indicate that although the magnetic field and compression ratio do not influence the beam current of the mechanically tunable MIG, but the beam current of the MIG depends on the cathode temperature and relative position of the center electrode. Finally, an improved mechanically tunable MIG design is developed to enhance an beam quality while minimizing beam current variation.
机译:回旋加速器因其高功率性能而受到广泛关注,特别是当波长缩小到毫米波范围以下时。回旋管的电子束通常由磁控管注入枪(MIG)产生,并且采用机械可调MIG来提高束质量。但是,对机械可调式MIG的中心电极位置进行轻微调整会导致电场分布发生明显变化。因此,机械可调MIG的阴极电流不仅取决于阴极温度,还取决于中心电极的相对位置。为了准确确定机械可调MIG的电子束特性,采用了改进的计算机程序来模拟电子轨迹。仿真和测量结果表明,尽管磁场和压缩比不影响机械可调MIG的束流,但MIG的束流取决于阴极温度和中心电极的相对位置。最后,开发了一种改进的机械可调MIG设计,以提高光束质量,同时最大程度地减小光束电流变化。

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